Handbook of VLSI Microlithography

Handbook of VLSI Microlithography
Author: William B. Glendinning,John N. Helbert
Publsiher: William Andrew
Total Pages: 671
Release: 2012-12-02
Genre: Technology & Engineering
ISBN: 9781437728224

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This handbook gives readers a close look at the entire technology of printing very high resolution and high density integrated circuit (IC) patterns into thin resist process transfer coatings-- including optical lithography, electron beam, ion beam, and x-ray lithography. The book's main theme is the special printing process needed to achieve volume high density IC chip production, especially in the Dynamic Random Access Memory (DRAM) industry. The book leads off with a comparison of various lithography methods, covering the three major patterning parameters of line/space, resolution, line edge and pattern feature dimension control. The book's explanation of resist and resist process equipment technology may well be the first practical description of the relationship between the resist process and equipment parameters. The basics of resist technology are completely covered -- including an entire chapter on resist process defectivity and the potential yield limiting effect on device production. Each alternative lithographic technique and testing method is considered and evaluated: basic metrology including optical, scanning-electron-microscope (SEM) techniques and electrical test devices, along with explanations of actual printing tools and their design, construction and performance. The editor devotes an entire chapter to today's sophisticated, complex electron-beam printers, and to the emerging x-ray printing technology now used in high-density CMOS devices. Energetic ion particle printing is a controllable, steerable technology that does not rely on resist, and occupies a final section of the handbook.

Lithography for VLSI

Lithography for VLSI
Author: Norman G. Einspruch,R. K. Watts
Publsiher: Academic Press
Total Pages: 374
Release: 2014-12-01
Genre: Technology & Engineering
ISBN: 9781483217826

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VLSI Electronics Microstructure Science, Volume 16: Lithography for VLSI treats special topics from each branch of lithography, and also contains general discussion of some lithographic methods. This volume contains 8 chapters that discuss the various aspects of lithography. Chapters 1 and 2 are devoted to optical lithography. Chapter 3 covers electron lithography in general, and Chapter 4 discusses electron resist exposure modeling. Chapter 5 presents the fundamentals of ion-beam lithography. Mask/wafer alignment for x-ray proximity printing and for optical lithography is tackled in Chapter 6. Chapters 7 and 8 on metrology deal with the characterization of lithography by measurements of various types. Engineers, scientists, and technical managers in the semiconductor industry, and engineering and applied physics faculty and graduate students will find the text very useful.

Handbook of VLSI Microlithography 2nd Edition

Handbook of VLSI Microlithography  2nd Edition
Author: John N. Helbert
Publsiher: Cambridge University Press
Total Pages: 1026
Release: 2001-04
Genre: Technology & Engineering
ISBN: 9780080946801

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This handbook gives readers a close look at the entire technology of printing very high resolution and high density integrated circuit (IC) patterns into thin resist process transfer coatingsùincluding optical lithography, electron beam, ion beam, and x-ray lithography. The book's main theme is the special printing process needed to achieve volume high density IC chip production, especially in the Dynamic Random Access Memory (DRAM) industry. The book leads off with a comparison of various lithography methods, covering the three major patterning parameters of line/space, resolution, line edge and pattern feature dimension control. The book's explanation of resist and resist process equipment technology may well be the first practical description of the relationship between the resist process and equipment parameters. The basics of resist technology are completely coveredùincluding an entire chapter on resist process defectivity and the potential yield limiting effect on device production. Each alternative lithographic technique and testing method is considered and evaluated: basic metrology including optical, scanning-electron-microscope (SEM) techniques and electrical test devices, along with explanations of actual printing tools and their design, construction and performance. The editor devotes an entire chapter to today's sophisticated, complex electron-beam printers, and to the emerging x-ray printing technology now used in high-density CMOS devices. Energetic ion particle printing is a controllable, steerable technology that does not rely on resist, and occupies a final section of the handbook.

Fine Line Lithography

Fine Line Lithography
Author: R Newman
Publsiher: Elsevier
Total Pages: 492
Release: 2012-12-02
Genre: Science
ISBN: 9780444601285

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Materials Processing - Theory and Practices, Volume 1: Fine Line Lithography reviews technical information as well as the theory and practices of materials processing. It looks at very large scale integration (VLSI) technology, with emphasis on the creation of fine line patterned structures that make up the devices and interconnects of complex functional circuits. It also describes a variety of other technologies that provide finer patterns, from modified versions of optical methods to electron-optic systems, non-plus-ultra of X-ray techniques, and dry processing that uses the chemical or kinetic energies of gas molecules or ions. Organized into five chapters, this volume begins with an overview of the fundamentals of electron and X-ray lithography, with a focus on resists and the way they function, and how they are used in microfabrication. It then discusses electron scattering and its effects on resist exposure and development, electron-beam lithography equipment, X-ray lithography, and optical methods for fine line lithography. It systematically introduces the reader to electron-beam projection techniques, dry processing methods, and application of electron-beam technology to large-scale integrated circuits. Other chapters focus on contact and proximity printing, projection printing, deep-UV lithography, and shadow printing with electrons and ions. The book describes reactive plasma etching and ion beam etching before concluding with a look at factors affecting the performance of the scanning-probe type of systems. This book is a valuable resource for materials engineers and processing engineers, as well as those in the academics and industry.

Handbook Of Vlsi Microlithography

Handbook Of Vlsi Microlithography
Author: Editor - John N. Helbert
Publsiher: Unknown
Total Pages: 1022
Release: 2005-01-01
Genre: Integrated circuits
ISBN: 8179924750

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The Handbook of VLSI Microlithography gives engineers, scientists and technical workers in the Very Large Scale Integrated Circuit (VLSI) industry a close look at the entire technology of printing high resolution and high density integrated circuit (IC) patterns into thin resist process pattern transfer coatings including optical lithography, electron-beam, ion-beam, and X-ray lithography. The Handbook s main focus is the special printing process needed to achieve volume high density IC chip production, especially in the Dynamic Random Access Memory (DRAM) industry.The 13 contributors compare various lithography methods, including the three major patterning parameters of line/space, resolution, line edge and pattern feature dimension control. They explore the basics of resist technology including the first practical description of the relationship between the resist process and equipment parameters.The Handbook includes evaluations of alternative lithographic techniques and testing methods, including optical, scanning-electron-micro-scope (SEM) techniques and electrical test devices, along with explanations of actual printing tools and their design, construction and performance. The editor devotes an entire chapter to today s sophisticated, complex electron-beam printers, and to the emerging X-ray printing technology now used in high-density CMOS devices. Energetic ion particle printing is a controllable, steerable technology that does not rely on resist, and occupies a final section of the Handbook.

Resolution Enhancement Techniques in Optical Lithography

Resolution Enhancement Techniques in Optical Lithography
Author: Alfred Kwok-Kit Wong
Publsiher: SPIE Press
Total Pages: 238
Release: 2001
Genre: Science
ISBN: 0819439959

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Ever-smaller IC devices are pushing the optical lithography envelope, increasing the importance of resolution enhancement techniques. This tutorial encompasses two decades of research. It discusses theoretical and practical aspects of commonly used techniques, including optical imaging and resolution, modified illumination, optical proximity correction, alternating and attenuating phase-shifting masks, selecting RETs, and second-generation RETs. Useful for students and practicing lithographers

Fundamental Principles of Optical Lithography

Fundamental Principles of Optical Lithography
Author: Chris Mack
Publsiher: John Wiley & Sons
Total Pages: 503
Release: 2011-08-10
Genre: Technology & Engineering
ISBN: 9781119965077

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The fabrication of an integrated circuit requires a variety of physical and chemical processes to be performed on a semiconductor substrate. In general, these processes fall into three categories: film deposition, patterning, and semiconductor doping. Films of both conductors and insulators are used to connect and isolate transistors and their components. By creating structures of these various components millions of transistors can be built and wired together to form the complex circuitry of modern microelectronic devices. Fundamental to all of these processes is lithography, ie, the formation of three-dimensional relief images on the substrate for subsequent transfer of the pattern to the substrate. This book presents a complete theoretical and practical treatment of the topic of lithography for both students and researchers. It comprises ten detailed chapters plus three appendices with problems provided at the end of each chapter. Additional Information: Visiting http://www.lithoguru.com/textbook/index.html enhances the reader's understanding as the website supplies information on how you can download a free laboratory manual, Optical Lithography Modelling with MATLAB®, to accompany the textbook. You can also contact the author and find help for instructors.

VLSI Electronics

VLSI Electronics
Author: D B Clayson
Publsiher: Elsevier
Total Pages: 357
Release: 2014-06-28
Genre: Technology & Engineering
ISBN: 9781483297804

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VLSI Electronics